A simple and quick sensitivity analysis method for methane isotopologues detection with GOSAT-TANSO-FTS.

Edward Malina, Jan-Peter Muller, David Walton
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引用次数: 1

Abstract

Measurements of methane isotopologues can differentiate between different source types, be they biogenic (e.g. marsh lands) or abiogenic (e.g. industry). Global measurements of these isotopologues would greatly benefit the current disconnect between 'top-down' (knowledge from chemistry transport models and satellite measurements) and 'bottom-up' (in situ measurement inventories) methane measurements. However, current measurements of these isotopologues are limited to a small number of in situ studies and airborne studies. In this paper we investigate the potential for detecting the second most common isotopologue of methane (13CH4) from space using the Japanese Greenhouse Gases Observing Satellite applying a quick and simple residual radiance analysis technique. The method allows for a rapid analysis of spectral regions, and can be used to teach university students or advanced school students about radiative transfer analysis. Using this method we find limited sensitivity to 13CH4, with detections limited to total column methane enhancements of >6%, assuming a desert surface albedo of >0.3.

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GOSAT-TANSO-FTS检测甲烷同位素的简便快速灵敏度分析方法
甲烷同位素测量可以区分不同的来源类型,无论是生物源(如沼泽)还是非生物源(如工业)。这些同位素的全球测量将极大地有利于目前“自上而下”(来自化学传输模型和卫星测量的知识)和“自下而上”(现场测量清单)甲烷测量之间的脱节。然而,目前对这些同位素的测量仅限于少数实地研究和空中研究。在本文中,我们研究了利用日本温室气体观测卫星应用快速和简单的剩余辐射分析技术从太空检测第二种最常见的甲烷同位素(13CH4)的潜力。该方法可以快速分析光谱区域,并可用于教授大学生或高等学校的学生有关辐射转移分析。使用该方法,我们发现对13CH4的灵敏度有限,假设沙漠表面反照率>0.3,检测仅限于总柱甲烷增强>6%。
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